Valachova Katarina, Svik Karol, Biro Csaba, Collins Maurice N, Jurcik Rastislav, Ondruska Lubomir, Soltes Ladislav
Centre of Experimental Medicine, Institute of Experimental Pharmacology and Toxicology, 84104 Bratislava, Slovakia.
Department of Pathology, St. Elizabeth Cancer Institute Hospital, 81250 Bratislava, Slovakia.
Polymers (Basel). 2020 Dec 29;13(1):95. doi: 10.3390/polym13010095.
A high-molecular weight hyaluronan is oxidatively degraded by Cu(II) ions and ascorbate-the so called Weissberger biogenic oxidative system-which is one of the most potent generators of reactive oxygen species, namely OH radicals. Ergothioneine, hercynine, or histidine were loaded into chitosan/hyaluronan composite membranes to examine their effect on skin wound healing in ischemic rabbits. We also explored the ability of ergothioneine, hercynine, or histidine to inhibit hyaluronan degradation. Rotational viscometry showed that ergothioneine decreased the degree of hyaluronan radical degradation in a dose-dependent manner. While histidine was shown to be potent in scavenging OH radicals, however, hercynine was ineffective. results showed that the addition of each investigated agent to chitosan/hyaluronan membranes contributed to a more potent treatment of ischemic skin wounds in rabbits compared to untreated animals and animals treated only with chitosan/hyaluronan membranes.
高分子量透明质酸可被铜(II)离子和抗坏血酸氧化降解,即所谓的魏斯伯格生物氧化系统,它是活性氧物种(即羟基自由基)最有效的产生者之一。将麦角硫因、组氨酸三甲铵或组氨酸负载到壳聚糖/透明质酸复合膜中,以研究它们对缺血兔皮肤伤口愈合的影响。我们还探究了麦角硫因、组氨酸三甲铵或组氨酸抑制透明质酸降解的能力。旋转粘度测定法表明,麦角硫因以剂量依赖的方式降低了透明质酸自由基降解的程度。虽然组氨酸被证明在清除羟基自由基方面很有效,但是组氨酸三甲铵却无效。结果表明,与未处理的动物以及仅用壳聚糖/透明质酸膜处理的动物相比,向壳聚糖/透明质酸膜中添加每种研究试剂都有助于更有效地治疗兔的缺血性皮肤伤口。